David Baxter
David Baxter
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Self-assembled virus-like particles with magnetic cores
X Huang, LM Bronstein, J Retrum, C Dufort, I Tsvetkova, S Aniagyei, ...
Nano letters 7 (8), 2407-2416, 2007
Anisotropic magnetoresistance in
DV Baxter, D Ruzmetov, J Scherschligt, Y Sasaki, X Liu, JK Furdyna, ...
Physical Review B 65 (21), 212407, 2002
Fitting to magnetoresistance under weak localization in three dimensions
DV Baxter, R Richter, ML Trudeau, RW Cochrane, JO Strom-Olsen
Journal de Physique 50 (13), 1673-1688, 1989
Neutron-antineutron oscillations: Theoretical status and experimental prospects
DG Phillips II, WM Snow, K Babu, S Banerjee, DV Baxter, Z Berezhiani, ...
Physics Reports 612, 1-45, 2016
Structure and stability of sputter deposited beta‐tungsten thin films
IA Weerasekera, SI Shah, DV Baxter, KM Unruh
Applied physics letters 64 (24), 3231-3233, 1994
Measurement of resistance and spin-memory loss (spin relaxation) at interfaces using sputtered current perpendicular-to-plane exchange-biased spin valves
W Park, DV Baxter, S Steenwyk, I Moraru, WP Pratt Jr, J Bass
Physical Review B 62 (2), 1178, 2000
Mechanistic Role of H2O and the Ligand in the Chemical Vapor Deposition of Cu, Cu2O, CuO, and Cu3N from Bis (1, 1, 1, 5, 5, 5-hexafluoropentane-2, 4-dionato) copper (II)
J Pinkas, JC Huffman, DV Baxter, MH Chisholm, KG Caulton
Chemistry of materials 7 (8), 1589-1596, 1995
Molecular routes to metal carbides, nitrides, and oxides. 2. Studies of the ammonolysis of metal dialkylamides and hexamethyldisilylamides
DV Baxter, MH Chisholm, GJ Gama, VF DiStasi, AL Hector, IP Parkin
Chemistry of materials 8 (6), 1222-1228, 1996
Neutronic design and measured performance of the Low Energy Neutron Source (LENS) target moderator reflector assembly
CM Lavelle, DV Baxter, A Bogdanov, VP Derenchuk, H Kaiser, ...
Nuclear Instruments and Methods in Physics Research Section A: Accelerators …, 2008
Structure and properties of iron oxide nanoparticles encapsulated by phospholipids with poly (ethylene glycol) tails
EV Shtykova, X Huang, N Remmes, D Baxter, B Stein, B Dragnea, ...
The Journal of Physical Chemistry C 111 (49), 18078-18086, 2007
Magnetic Virus-like Nanoparticles in N. benthamiana Plants: A New Paradigm for Environmental and Agronomic Biotechnological Research
X Huang, BD Stein, H Cheng, A Malyutin, IB Tsvetkova, DV Baxter, ...
Acs Nano 5 (5), 4037-4045, 2011
Hydrophilic monodisperse magnetic nanoparticles protected by an amphiphilic alternating copolymer
EV Shtykova, X Huang, X Gao, JC Dyke, AL Schmucker, B Dragnea, ...
The Journal of Physical Chemistry C 112 (43), 16809-16817, 2008
Quantum-critical conductivity scaling for a metal-insulator transition
HL Lee, JP Carini, DV Baxter, W Henderson, G Grüner
Science 287 (5453), 633-636, 2000
Multiple bonds between metal atoms in ordered assemblies. 2. Quadrupole bonds in the mesomorphic state
DV Baxter, RH Cayton, MH Chisholm, JC Huffman, EF Putilina, SL Tagg, ...
Journal of the American Chemical Society 116 (11), 4551-4566, 1994
Theoretical studies of electron transfer in metal dimers: XY+→X+Y, where X, Y=Be, Mg, Ca, Zn, Cd
RJ Cave, DV Baxter, WA Goddard III, JD Baldeschwieler
The Journal of chemical physics 87 (2), 926-935, 1987
Magnetic nanoparticles with functional silanes: evolution of well-defined shells from anhydride containing silane
X Huang, A Schmucker, J Dyke, SM Hall, J Retrum, B Stein, N Remmes, ...
Journal of materials chemistry 19 (24), 4231-4239, 2009
Status of the low energy neutron source at Indiana University
DV Baxter, JM Cameron, VP Derenchuk, CM Lavelle, MB Leuschner, ...
Nuclear Instruments and Methods in Physics Research Section B: Beam …, 2005
High-temperature Hall effect in
D Ruzmetov, J Scherschligt, DV Baxter, T Wojtowicz, X Liu, Y Sasaki, ...
Physical Review B 69 (15), 155207, 2004
Temperature-frequency scaling in amorphous niobium-silicon near the metal-insulator transition
HL Lee, JP Carini, DV Baxter, G Grüner
Physical review letters 80 (19), 4261, 1998
Low pressure chemical vapor deposition of metallic films of iron, manganese, cobalt, copper, germanium and tin employing bis (trimethyl) silylamido complexes, M (N (SiMe3) 2) n
DV Baxter, MH Chisholm, GJ Gama, AL Hector, IP Parkin
Chemical Vapor Deposition 1 (2), 49-51, 1995
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